\contentsline {chapter}{摘要}{iii}{section*.1}
\contentsline {chapter}{Abstract}{v}{section*.3}
\contentsline {chapter}{目录}{vii}{section*.5}
\contentsline {chapter}{\numberline {1}绪论(前言)}{1}{chapter.1}
\contentsline {section}{\numberline {1.1}课题背景}{1}{section.1.1}
\contentsline {section}{\numberline {1.2}国内外研究现状}{2}{section.1.2}
\contentsline {section}{\numberline {1.3}本文内容和论文安排}{2}{section.1.3}
\contentsline {chapter}{\numberline {2}矩量法}{5}{chapter.2}
\contentsline {section}{\numberline {2.1}矩量法的数学原理}{5}{section.2.1}
\contentsline {section}{\numberline {2.2}基函数与试函数}{6}{section.2.2}
\contentsline {section}{\numberline {2.3}表面积分方程}{6}{section.2.3}
\contentsline {section}{\numberline {2.4}阻抗矩阵及右边激励项}{8}{section.2.4}
\contentsline {section}{\numberline {2.5}矩阵求解及远场计算}{9}{section.2.5}
\contentsline {section}{\numberline {2.6}数值算例}{10}{section.2.6}
\contentsline {subsection}{\numberline {2.6.1}与Mie级数解比较}{10}{subsection.2.6.1}
\contentsline {subsection}{\numberline {2.6.2}与测量值比较}{12}{subsection.2.6.2}
\contentsline {subsection}{\numberline {2.6.3}与商用仿真软件比较}{13}{subsection.2.6.3}
\contentsline {section}{\numberline {2.7}本章小结}{14}{section.2.7}
\contentsline {chapter}{\numberline {3}物理光学法与矩量法的混合}{15}{chapter.3}
\contentsline {section}{\numberline {3.1}物理光学法}{15}{section.3.1}
\contentsline {section}{\numberline {3.2}物理光学法与矩量法的混合}{17}{section.3.2}
\contentsline {subsection}{\numberline {3.2.1}区域的划分}{17}{subsection.3.2.1}
\contentsline {subsection}{\numberline {3.2.2}矩量法区的表达公式}{17}{subsection.3.2.2}
\contentsline {subsection}{\numberline {3.2.3}物理光学法区的表达公式}{18}{subsection.3.2.3}
\contentsline {subsection}{\numberline {3.2.4}PO-MM混合算法表达式}{20}{subsection.3.2.4}
\contentsline {section}{\numberline {3.3}数值算例}{21}{section.3.3}
\contentsline {subsection}{\numberline {3.3.1}MM区为线天线}{21}{subsection.3.3.1}
\contentsline {subsection}{\numberline {3.3.2}MM区为三维结构}{22}{subsection.3.3.2}
\contentsline {subsection}{\numberline {3.3.3}结果分析}{23}{subsection.3.3.3}
\contentsline {section}{\numberline {3.4}本章小结}{24}{section.3.4}
\contentsline {chapter}{\numberline {4}区域分解矩量法}{25}{chapter.4}
\contentsline {section}{\numberline {4.1}区域分解法的原理和数学描述}{25}{section.4.1}
\contentsline {section}{\numberline {4.2}区域分解法的复杂度分析}{26}{section.4.2}
\contentsline {section}{\numberline {4.3}基于积分方程的区域分解法}{27}{section.4.3}
\contentsline {section}{\numberline {4.4}重叠型区域分解的缓冲区定义}{30}{section.4.4}
\contentsline {section}{\numberline {4.5}数值算例}{30}{section.4.5}
\contentsline {subsection}{\numberline {4.5.1}开放结构的DDM}{31}{subsection.4.5.1}
\contentsline {subsection}{\numberline {4.5.2}封闭结构的DDM}{32}{subsection.4.5.2}
\contentsline {subsection}{\numberline {4.5.3}结果分析}{33}{subsection.4.5.3}
\contentsline {section}{\numberline {4.6}本章小结}{34}{section.4.6}
\contentsline {chapter}{\numberline {5}基于等效源法的快速算法框架}{35}{chapter.5}
\contentsline {section}{\numberline {5.1}等效源法的原理与基本思想}{35}{section.5.1}
\contentsline {section}{\numberline {5.2}自散射参数和互耦合参数}{37}{section.5.2}
\contentsline {section}{\numberline {5.3}算法效率分析}{38}{section.5.3}
\contentsline {section}{\numberline {5.4}EPA算法的应用拓展}{38}{section.5.4}
\contentsline {subsection}{\numberline {5.4.1}EPA与PO-MM结合}{38}{subsection.5.4.1}
\contentsline {subsection}{\numberline {5.4.2}EPA与DDM结合}{39}{subsection.5.4.2}
\contentsline {subsection}{\numberline {5.4.3}基于EPA的快速算法框架}{39}{subsection.5.4.3}
\contentsline {section}{\numberline {5.5}数值算例}{40}{section.5.5}
\contentsline {subsection}{\numberline {5.5.1}正确性验证}{40}{subsection.5.5.1}
\contentsline {subsection}{\numberline {5.5.2}周期结构问题中的应用}{40}{subsection.5.5.2}
\contentsline {subsection}{\numberline {5.5.3}应用于PO-MM混合法}{44}{subsection.5.5.3}
\contentsline {section}{\numberline {5.6}本章小结}{45}{section.5.6}
\contentsline {chapter}{\numberline {6}结束语}{47}{chapter.6}
\contentsline {chapter}{致谢}{49}{section*.56}
\contentsline {chapter}{参考文献}{51}{chapter*.58}
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\contentsline {chapter}{\numberline {A}Maxwell方程组及其边界条件}{55}{appendix.A}
\contentsline {chapter}{\numberline {B}RWG基函数}{57}{appendix.B}
\contentsline {chapter}{\numberline {C}线天线的矩量法}{59}{appendix.C}
\contentsfinish 
